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Critical Setup Parameter for Ultrafast Whitelight Coherent Antistokes Raman Scattering Spectroscopy of Living Plankton in Sea Water

机译:海水中浮游生物超快白光相干反斯托克斯拉曼散射光谱的关键设置参数

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The health and growth rates of shellfish depends critically on the precise chemical and biological makeup of the surrounding seawater. Rapid and continuous sensing of the marine environment enables improved harvests and better profits. However, underwater spectroscopy is still in its infancy. Our research aim is to develop a new sensor that is well-suited for marine environments and one that is capable of working at depths of up to 20 metres. We discuss a modified high intensity femtosecond coherent anti-Stokes Raman Scattering (CARS) system, which removes the usual limitations such as a limited wavenumber range and a low signal-to-noise ratio (SNR) due to non-resonant background. A particular set of Probe and Stokes pulses aim to investigate the spectra of various living plankton in seawater. It also determines critical parameters for the underwater CARS system such as signal dependent on the pulse energies, vibrational dephasing times and numerical aperture dependencies in forward CARS. This links to theory and greatly expands the understanding of CARS parameters for future underwater CARS experiments.
机译:贝类的健康和生长速度主要取决于周围海水的精确化学和生物组成。快速连续地感测海洋环境可以提高收成并提高利润。但是,水下光谱学仍处于起步阶段。我们的研究目标是开发一种新传感器,该传感器非常适合海洋环境,并且能够在高达20米的深度下工作。我们讨论了一种改进的高强度飞秒相干反斯托克斯拉曼散射(CARS)系统,该系统消除了通常的局限性,例如有限的波数范围和由于非共振背景而导致的低信噪比(SNR)。一组特定的探针和斯托克斯脉冲旨在研究海水中各种活浮游生物的光谱。它还确定了水下CARS系统的关键参数,例如取决于脉冲能量的信号,振动移相时间以及前向CARS中的数值孔径依赖性。这与理论联系在一起,极大地扩展了对CARS参数的理解,可用于未来的水下CARS实验。

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